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首页> 外文期刊>Brain pathology >The role of the dopamine transporter in dopamine-induced DNA damage.
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The role of the dopamine transporter in dopamine-induced DNA damage.

机译:多巴胺转运蛋白在多巴胺诱导的DNA损伤中的作用。

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摘要

The neurotransmitter dopamine causes DNA damage, oxidative stress and is involved in the pathology of neurological diseases. To elucidate this potential link we investigated the mechanism of dopamine-induced DNA damage. We studied the role of the dopamine transporter (DAT) in MDCK and MDCK-DAT cells, containing the human DAT gene. After treatment with dopamine, only MDCK-DAT cells showed elevated chromosomal damage and dopamine uptake. Although stimulation of dopamine type 2 receptor (D(2)R) with quinpirole in the absence of dopamine did not induce genotoxicity in rat neuronal PC12 cells, interference with D(2)R signaling by inhibition of G-proteins, phosphoinositide 3 kinase and extracellular signal-regulated kinases reduced dopamine-induced genotoxicity and affected the ability of DAT to take up dopamine. Furthermore, the D(2)R antagonist sulpiride inhibited the dopamine-induced migration of DAT from cytosol to cell membrane. To determine whether oxidation of dopamine by monoamine oxidase (MAO) is relevant in its genotoxicity, we inhibited MAO, which reduced the formation of micronuclei and of the oxidative DNA adduct 8-oxodG. Overall, dopamine exerted its genotoxicity in vitro upon transport into the cells and oxidation by MAO. D(2)R signaling was involved in the genotoxicity of dopamine by affecting activation and cell surface expression of DAT and hence modulating dopamine uptake.
机译:神经递质多巴胺引起DNA损伤,氧化应激,并参与神经系统疾病的病理过程。为了阐明这一潜在的联系,我们研究了多巴胺诱导的DNA损伤的机制。我们研究了多巴胺转运蛋白(DAT)在包含人DAT基因的MDCK和MDCK-DAT细胞中的作用。用多巴胺处理后,仅MDCK-DAT细胞显示出升高的染色体损伤和多巴胺摄取。虽然在没有多巴胺的情况下用喹吡罗刺激多巴胺2型受体(D(2)R)不会在大鼠神经元PC12细胞中诱导遗传毒性,但通过抑制G蛋白,磷酸肌醇3激酶和细胞外信号调节激酶减少了多巴胺引起的遗传毒性,并影响了DAT吸收多巴胺的能力。此外,D(2)R拮抗剂舒必利抑制多巴胺诱导的DAT从细胞质迁移到细胞膜。为了确定单胺氧化酶(MAO)对多巴胺的氧化在其遗传毒性方面是否相关,我们抑制了MAO,MAO减少了微核和氧化DNA加合物8-oxodG的形成。总体而言,多巴胺在转运进入细胞并被MAO氧化后,会在体外发挥其遗传毒性。 D(2)R信号传导通过影响DAT的激活和细胞表面表达并因此调节多巴胺的摄取而参与多巴胺的遗传毒性。

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